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Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380

The small molecule anticancer agent NSC-743380 modulates functions of multiple cancer-related pathways and is highly active in a subset of cancer cell lines in the NCI-60 cell line panel. It also has promising in vivo anticancer activity. However, the mechanisms underlying NSC-743380's selectiv...

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Autores principales: Huang, Xiao, Cao, Mengru, Wang, Li, Wu, Shuhong, Liu, Xiaoying, Li, Hongyu, Zhang, Hui, Wang, Rui-Yu, Sun, Xiaoping, Wei, Caimiao, Baggerly, Keith A., Roth, Jack A., Wang, Michael, Swisher, Stephen G., Fang, Bingliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4381599/
https://www.ncbi.nlm.nih.gov/pubmed/25514600
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author Huang, Xiao
Cao, Mengru
Wang, Li
Wu, Shuhong
Liu, Xiaoying
Li, Hongyu
Zhang, Hui
Wang, Rui-Yu
Sun, Xiaoping
Wei, Caimiao
Baggerly, Keith A.
Roth, Jack A.
Wang, Michael
Swisher, Stephen G.
Fang, Bingliang
author_facet Huang, Xiao
Cao, Mengru
Wang, Li
Wu, Shuhong
Liu, Xiaoying
Li, Hongyu
Zhang, Hui
Wang, Rui-Yu
Sun, Xiaoping
Wei, Caimiao
Baggerly, Keith A.
Roth, Jack A.
Wang, Michael
Swisher, Stephen G.
Fang, Bingliang
author_sort Huang, Xiao
collection PubMed
description The small molecule anticancer agent NSC-743380 modulates functions of multiple cancer-related pathways and is highly active in a subset of cancer cell lines in the NCI-60 cell line panel. It also has promising in vivo anticancer activity. However, the mechanisms underlying NSC-743380's selective anticancer activity remain uncharacterized. To determine biomarkers that may be used to identify responders to this novel anticancer agent, we performed correlation analysis on NSC-743380's anticancer activity and the gene expression levels in NCI-60 cell lines and characterized the functions of the top associated genes in NSC-743380–mediated anticancer activity. We found sulfotransferase SULT1A1 is causally associated with NSC-743380's anticancer activity. SULT1A1 was expressed in NSC-743380–sensitive cell lines but was undetectable in resistant cancer cells. Ectopic expression of SULT1A1 in NSC743380 resistant cancer cells dramatically sensitized the resistant cells to NSC-743380. Knockdown of the SULT1A1 in the NSC-743380 sensitive cancer cell line rendered it resistance to NSC-743380. The SULT1A1 protein levels in cell lysates from 18 leukemia cell lines reliably predicted the susceptibility of the cell lines to NSC-743380. Thus, expression of SULT1A1 in cancer cells is required for NSC-743380's anticancer activity and can be used as a biomarker for identification of NSC-743380 responders.
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spelling pubmed-43815992015-04-09 Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380 Huang, Xiao Cao, Mengru Wang, Li Wu, Shuhong Liu, Xiaoying Li, Hongyu Zhang, Hui Wang, Rui-Yu Sun, Xiaoping Wei, Caimiao Baggerly, Keith A. Roth, Jack A. Wang, Michael Swisher, Stephen G. Fang, Bingliang Oncotarget Research Paper The small molecule anticancer agent NSC-743380 modulates functions of multiple cancer-related pathways and is highly active in a subset of cancer cell lines in the NCI-60 cell line panel. It also has promising in vivo anticancer activity. However, the mechanisms underlying NSC-743380's selective anticancer activity remain uncharacterized. To determine biomarkers that may be used to identify responders to this novel anticancer agent, we performed correlation analysis on NSC-743380's anticancer activity and the gene expression levels in NCI-60 cell lines and characterized the functions of the top associated genes in NSC-743380–mediated anticancer activity. We found sulfotransferase SULT1A1 is causally associated with NSC-743380's anticancer activity. SULT1A1 was expressed in NSC-743380–sensitive cell lines but was undetectable in resistant cancer cells. Ectopic expression of SULT1A1 in NSC743380 resistant cancer cells dramatically sensitized the resistant cells to NSC-743380. Knockdown of the SULT1A1 in the NSC-743380 sensitive cancer cell line rendered it resistance to NSC-743380. The SULT1A1 protein levels in cell lysates from 18 leukemia cell lines reliably predicted the susceptibility of the cell lines to NSC-743380. Thus, expression of SULT1A1 in cancer cells is required for NSC-743380's anticancer activity and can be used as a biomarker for identification of NSC-743380 responders. Impact Journals LLC 2014-11-16 /pmc/articles/PMC4381599/ /pubmed/25514600 Text en Copyright: © 2015 Huang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Huang, Xiao
Cao, Mengru
Wang, Li
Wu, Shuhong
Liu, Xiaoying
Li, Hongyu
Zhang, Hui
Wang, Rui-Yu
Sun, Xiaoping
Wei, Caimiao
Baggerly, Keith A.
Roth, Jack A.
Wang, Michael
Swisher, Stephen G.
Fang, Bingliang
Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title_full Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title_fullStr Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title_full_unstemmed Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title_short Expression of sulfotransferase SULT1A1 in cancer cells predicts susceptibility to the novel anticancer agent NSC-743380
title_sort expression of sulfotransferase sult1a1 in cancer cells predicts susceptibility to the novel anticancer agent nsc-743380
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4381599/
https://www.ncbi.nlm.nih.gov/pubmed/25514600
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